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Linear analysis of an X-band backward wave oscillator with a circular-edge disk-loaded cylindrical waveguide driven by an annular electron beam

机译:具有环形电子束驱动的圆形边缘盘式圆柱形波导的X波段向后波振荡器的线性分析

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摘要

An X-band backward wave oscillator (BWO) with a circular-edge disk-loaded periodic metallic slow wave structure (CDSWS) is proposed and studied numerically. The structure is the modified version of our previously modeled semi-circularly corrugated slow wave structure (SCCSWS). The CDSWS is energized by an intense relativistic electron beam (IREB) which is directed by a strong magnetic field. The electromagnetic (EM) wave of the slow wave structure (SWS) merges with the space charge wave of the beam under the guidance of the strong axial magnetic field. The inner wall contour of CDSWS is modeled by a finite Fourier series and the dispersion characteristics of different TM modes are solved by utilizing the linear Rayleigh-Fourier (R-F) technique, which is verified by a commercial EM solver. To study the temporal growth rate (TGR) for the fundamental TM01 mode, the dispersion equation is solved for the beam current of 0.1-1.0 kA and the beam energy of 205-665 kV. For the TM01 mode, the TGR that occurs at the unstable region, which provides a qualitative index of the strength of the microwave generation, is compared with those of the BWOs with sinusoidally corrugated SWS (SCSWS), disk-loaded SWS (DLSWS) and triangularly corrugated SWS (TrCSWS) for different beam parameters. The dimension of the CDSWS is determined by comparing the dispersion characteristics of fundamental TM01 mode with DLSWS and SCSWS. For the same set of beam parameters, an average of 3.5%, 7%, 1.5% and more than 50% higher TGR have been obtained with the proposed CDSWS than that of SCSWS, DLSWS, TrCSWS and SCCSWS respectively. Moreover, the presented structure also provides an advantage in the fabrication process and is less prone to RF breakdown since it has no sharp edges in the inner wall where the electric field intensity can be infinitely high.
机译:提出了一种具有圆形边缘盘装载的周期金属慢波结构(CDSW)的X波段向后波振荡器(BWO),并在数值上进行研究。该结构是我们以前建模的半圆形波纹慢波结构(SCCSW)的修改版本。 CDSWS由强烈的相对论电子束(IREB)通电,该激烈的相对论电子束(IREB)由强磁场引导。慢波结构(SWS)的电磁(EM)波在强轴向磁场的引导下与光束的空间电荷波合并。 CDSWS的内壁轮廓由有限的傅里叶系列建模,并且通过利用由商业EM求解器验证的线性思路傅里叶(R-F)技术来解决不同TM模式的色散特性。为了研究基本TM01模式的时间生长速率(TGR),可以为0.1-1.0ka的光束电流和205-665kV的光束能量解决了分散方程。对于TM01模式,在不稳定区域中出现的TGR,其提供微波生成强度的定性指数,与具有正弦波瓦楞SWS(SCSWS)的BWOS,磁盘加载的SWS(DLSW)和用于不同光束参数的三角形波纹SWS(TRCSW)。通过将基本TM01模式与DLSWS和SCSW的分散特性进行比较来确定CDSW的尺寸。对于相同的光束参数,平均分别与SCSWS,DLSWS,TRCSWS和SCCSW的CDSWS相同3.5%,7%,1.5%和超过50%的TGR。此外,所呈现的结构还在制造过程中提供了一种优点,并且不太容易发生RF击穿,因为在内壁中没有锋利的边缘,其中电场强度可以是无限的。

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